SUBJECT SYLLABUS

IISER IAT Physics syllabus

Explore all 28 topic groups and their subtopics. Use this checklist alongside question practice and spaced revision.

UNIT 01

Units and measurements

  • SI units and significant figures
  • Dimensions, dimensional formulae and equations
  • Dimensional analysis and applications
UNIT 02

Motion in a straight line

  • Instantaneous speed and velocity
  • Acceleration
  • Kinematic equations for uniform acceleration
UNIT 03

Motion in a plane

  • Scalar and vector quantities, scalar multiplication and graphical vector addition or subtraction
  • Components and analytical vector addition
  • Two-dimensional motion and constant acceleration
  • Projectiles and uniform circular motion
UNIT 04

Laws of motion

  • Inertia and Newton's three laws
  • Momentum conservation and particle equilibrium
  • Common mechanical forces
  • Forces required for circular motion
UNIT 05

Work, energy and power

  • Work and kinetic energy, including the work–energy theorem for variable forces
  • Potential energy, mechanical-energy conservation and springs
  • Power and collisions
UNIT 06

Particles and rotation

  • Centre of mass, its motion and system momentum
  • Vector products and the relation between angular and linear velocity
  • Torque, angular momentum and rigid-body equilibrium
  • Moments of inertia
  • Kinematics and dynamics of rotation about a fixed axis
UNIT 07

Gravitation

  • Kepler's laws, universal gravitation and the gravitational constant
  • Earth's gravitational acceleration above and below its surface
  • Potential energy and escape speed
  • Satellites, their orbits and orbital energy
UNIT 08

Mechanical properties of solids

  • Stress, strain and Hooke's law
  • Stress–strain curves and elastic moduli
  • Applications of elasticity
UNIT 09

Mechanical properties of fluids

  • Fluid pressure and streamline flow
  • Bernoulli's principle
  • Viscosity and surface tension
UNIT 10

Thermal properties of matter

  • Heat, temperature and thermometry
  • Ideal-gas equation and absolute temperature
  • Thermal expansion, specific heat and calorimetry
  • Changes of state, heat transfer and Newton's cooling law
UNIT 11

Thermodynamics

  • Thermal equilibrium and the zeroth law
  • Heat, internal energy, work and the first law
  • Heat capacities, state variables, equations of state and processes
  • The second law, reversibility and irreversibility
  • Carnot engines
UNIT 12

Kinetic theory

  • Molecular description of matter and gas behaviour
  • Kinetic theory of an ideal gas
  • Equipartition of energy and heat capacities
  • Mean free path
UNIT 13

Oscillations

  • Periodic motion and simple harmonic motion
  • SHM as a projection of circular motion
  • Velocity, acceleration, restoring force and energy in SHM
  • The simple pendulum
UNIT 14

Waves

  • Transverse and longitudinal waves
  • Progressive-wave displacement equations and wave speeds
  • Superposition and reflection
  • Beats
UNIT 15

Electric charges and fields

  • Charge properties, conductors and insulators
  • Coulomb forces and superposition for multiple charges
  • Electric fields, field lines and flux
  • Dipoles and their response to a uniform field
  • Continuous charge distributions, Gauss's law and its applications
UNIT 16

Potential and capacitance

  • Potential of points, dipoles and charge systems
  • Equipotential surfaces and energy of charges in internal or external fields
  • Conductors in electrostatic equilibrium
  • Dielectrics and polarisation
  • Parallel-plate capacitors, dielectric effects and capacitor combinations
  • Stored electrostatic energy
UNIT 17

Current electricity

  • Current in conductors, electron drift and resistivity
  • Ohm's law, its limitations and material or temperature dependence of resistivity
  • Electrical power and energy
  • Cells, emf, internal resistance and series or parallel combinations
  • Kirchhoff's rules and the Wheatstone bridge
UNIT 18

Moving charges and magnetism

  • Magnetic forces and particle trajectories
  • Biot–Savart law and the field on the axis of a circular loop
  • Ampere's circuital law and solenoids
  • Force between parallel currents and the ampere
  • Current-loop torque, magnetic dipoles and moving-coil galvanometers
UNIT 19

Magnetism and matter

  • Bar magnets and Gauss's law for magnetism
  • Magnetisation and magnetic intensity
  • Magnetic behaviour of materials
UNIT 20

Electromagnetic induction

  • Faraday and Henry's experiments, magnetic flux and Faraday's law
  • Lenz's law and energy conservation
  • Motional emf and inductance
  • AC generators
UNIT 21

Alternating current

  • Resistive, inductive and capacitive AC circuits
  • Phasor representation of voltage and current
  • Series LCR circuits
  • AC power and power factor
  • Transformers
UNIT 22

Electromagnetic waves

  • Displacement current
  • Properties of electromagnetic waves
  • The electromagnetic spectrum
UNIT 23

Ray optics and instruments

  • Spherical-mirror reflection and refraction
  • Total internal reflection
  • Refraction at curved surfaces and lenses
  • Prisms and optical instruments
UNIT 24

Wave optics

  • Huygens' principle applied to reflection and refraction
  • Coherent and incoherent wave addition
  • Interference and Young's experiment
  • Diffraction and polarisation
UNIT 25

Dual nature of radiation and matter

  • Electron emission and photoelectric observations
  • Limits of the wave description and Einstein's photoelectric equation
  • Energy quanta and photons
  • Matter waves
UNIT 26

Atoms

  • Alpha scattering and Rutherford's atom
  • Atomic spectra and the Bohr hydrogen model
  • Hydrogen line spectra
  • De Broglie's interpretation of Bohr's angular-momentum quantisation
UNIT 27

Nuclei

  • Atomic masses, nuclear composition and size
  • Mass–energy equivalence, binding energy and nuclear forces
  • Radioactivity and nuclear energy
UNIT 28

Semiconductors

  • Classification of conducting, insulating and semiconducting materials
  • Intrinsic and extrinsic semiconductors
  • The p–n junction and semiconductor diode
  • Rectification using a junction diode

Put the topics into practice

For each topic, explain the concept, solve a question without notes, then return to it after a gap. Older papers may include material outside the 2026 scope.

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